EP2936836B1 - Système de pose de prothèse auditive, et procédé pour la pose d'un système de prothèse auditive - Google Patents

Système de pose de prothèse auditive, et procédé pour la pose d'un système de prothèse auditive Download PDF

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Publication number
EP2936836B1
EP2936836B1 EP12815693.2A EP12815693A EP2936836B1 EP 2936836 B1 EP2936836 B1 EP 2936836B1 EP 12815693 A EP12815693 A EP 12815693A EP 2936836 B1 EP2936836 B1 EP 2936836B1
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EP
European Patent Office
Prior art keywords
hearing aid
external device
identification
client
fitting
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EP12815693.2A
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German (de)
English (en)
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EP2936836A1 (fr
Inventor
Anders Westergaard
Svend Vitting Andersen
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Widex AS
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Widex AS
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/70Adaptation of deaf aid to hearing loss, e.g. initial electronic fitting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2225/00Details of deaf aids covered by H04R25/00, not provided for in any of its subgroups
    • H04R2225/55Communication between hearing aids and external devices via a network for data exchange
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/55Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception using an external connection, either wireless or wired
    • H04R25/554Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception using an external connection, either wireless or wired using a wireless connection, e.g. between microphone and amplifier or using Tcoils

Definitions

  • the present invention relates to hearing aid fitting systems.
  • the present invention also relates to a method of fitting a hearing aid system.
  • a hearing aid should be understood as a small, microelectronic device designed to be worn behind or in a human ear of a hearing-impaired user.
  • a hearing aid system may be monaural and comprise only one hearing aid or be binaural and comprise two hearing aids.
  • the hearing aid Prior to use, the hearing aid is adjusted by a hearing aid fitter according to a prescription.
  • the prescription is based on a hearing test, resulting in a so-called audiogram, of the performance of the hearing-impaired user's unaided hearing.
  • the prescription is developed to reach a setting where the hearing aid will alleviate a hearing loss by amplifying sound at frequencies in those parts of the audible frequency range where the user suffers a hearing deficit.
  • a hearing aid comprises one or more microphones, a microelectronic circuit comprising a signal processor, and an acoustic output transducer.
  • the signal processor is preferably a digital signal processor.
  • the hearing aid is enclosed in a casing suitable for fitting behind or in a human ear.
  • each hearing aid fitter has his own office, and the user's hearing aids are adjusted using the fitting equipment that the hearing aid fitter has in his office.
  • the fitting equipment comprises a computer capable of executing the relevant hearing aid programming software and a programming device adapted to provide the link between the computer and the hearing aid.
  • Some hearing aid users may have special preferences or suffer from a hearing loss type that requires assistance from a hearing aid fitter with highly specialized competences. In these cases the hearing aid user will have to travel to this specific hearing aid fitter, which may be difficult and expensive for the hearing aid user.
  • DE-A1-19600234 discloses a method of fitting a hearing aid, wherein data are transmitted from the fitting equipment and to the hearing aid using a remote data transmission link such that the hearing aid fitting can be carried out practically independent of the distance between the hearing aid user and the hearing aid fitter.
  • the system comprises two computers that are connected using an ISDN link and in another embodiment one of the two computers comprises means for transforming the data, received over the transmission link, into a data format that can be understood by the hearing aid.
  • DE-U1-29905172 discloses a programming device that can be coupled directly to a telephone line, a modem or a computer, whereby data can be transmitted to and from the programming device.
  • the programming device is adapted to access and adjust the setting of a hearing aid.
  • the hearing aid fitter can adjust the setting of a distant hearing aid using the programming device and a telephone line for providing the data transmission link between the programming device and the fitting software located within the hearing aid fitter's office.
  • WO-A2-2011/128462 discloses a method for providing distant support to a plurality of personal hearing aid users. Prior to a support session, users are paired with providers by storing a pairing information, and when starting a support session, the stored pairing information is used to determine a support provider. According to a preferred embodiment data exchanged between the user computer and the supporter computer is relayed by a relay server, whereby both user and support provider may be located behind a firewall.
  • WO-A2-2011/128462 are disadvantageous in that they require the hearing aid user to start an application software that may have to be installed on the user's computer and establish a data connection between the personal hearing system and the user computer.
  • the invention in a first aspect, provides a method of fitting a hearing aid system according to claim 1.
  • This provides a hearing aid fitting system that allows the hearing aid fitting procedure to be carried out by a multitude of persons located in different geographical locations.
  • the invention in a second aspect, provides a method of remote fitting of a hearing aid according to claim 14.
  • This provides an improved method of remotely fitting a hearing aid system.
  • internet computer network and local area network may be used interchangeable.
  • the common feature being that devices connected to either of these computer networks can be accessed based on a network address.
  • the inventors have found a hearing aid fitting system that allows any hearing fitter, independent of geographical location, to carry out at least part of the hearing aid fitting procedure.
  • the inventors have found a hearing aid fitting system that is extremely flexible and easy to use (provided computer network such as the internet or a Local Area Network is available) insofar that the same hearing aid fitting system can be used independent on whether:
  • Fig. 1 illustrates highly schematically a hearing aid fitting system 100 according to a first embodiment of the invention.
  • the hearing aid fitting system 100 comprises a client 101, an external device 102, a control server 103, a hearing aid user database server 104 and a hearing aid system 110.
  • the client 101 further comprises hearing aid fitting software 105, a fitting connection software 106 and a fitting software driver 107.
  • the external device 102 comprises an external device connection software 108 and an external device software driver 109.
  • the individual components of the hearing aid fitting system 100 are further described below through an explanation of the method steps carried out in a hearing aid fitting session according to the invention.
  • a hearing aid fitter is at his office in the clinic, at home or somewhere else where a client and internet access is available.
  • the control server 103 comprises a look-up database that holds pairs of unique external device identifications and searchable names of different types that allow the hearing aid fitter to find the desired external device in a simple and efficient manner.
  • the searchable names may be of the type "hearing aid user” for those external devices that are assigned to one specific user, may be of the type “clinic” for those external devices that are owned and used by a specific clinic, may be of the type “hearing aid fitter” for those devices that are owned by a specific hearing aid fitter or may be of the type "public institution” for those devices that are located in public institutions such as libraries, hospitals or other governmental institutions.
  • the external devices of the types "clinic” and “public institution” may have names that comprise more information than just the clinic or public institution name, e.g. "clinic-1” and “clinic-2” or “clinic-room1” and “clinic-room2” and so on.
  • This structure of the look-up database ensures that the hearing aid fitter can locate a specific external device in a fast and efficient manner.
  • a service provider maintaining the control server 103 may provide said pairing information to the look-up database on the control server 103, but a hearing aid fitter may also provide this information directly to the look-up database on the control server 103 when a hearing aid user receives his own external device or when a hearing fitter assigns an external device to be his own personal device or to be assigned to a specific clinic and possibly even a specific location or purpose in that clinic.
  • the external device 102 is operated in exactly the same manner independent of whether it is used by a hearing aid user or a hearing aid fitter or whether it is used at home or in a hearing aid clinic.
  • the external device connection software 108 establishes contact to the control server 103, reports that the external device is online and provides the unique external device identification and the current computer network address. Basically these steps can be carried out at any time prior to the fitting.
  • the external device connection software 108 also establishes contact to the hearing aid system 110.
  • the pairing information stored in the control server does not have to be updated, if e.g. the hearing aid user replaces his hearing aid system, because it is the external device identification that is stored.
  • the external device is adapted to read out a unique hearing aid system identification from the hearing aid system 110.
  • the unique external device identification is replaced by a unique hearing aid system identification that is read out from the hearing aid system by the external device.
  • unique device identification may be used to denote both the unique hearing aid system identification and the unique external device identification.
  • the hearing aid fitter accesses a hearing aid user database server 104 and selects an entry for a hearing aid user, for whom fitting of a hearing aid system 100 is to be carried out.
  • a unique hearing aid user identification code is assigned to each hearing aid user.
  • the hearing aid user database server 104 comprises for each hearing aid user data such as hearing loss, and details concerning current and prior fittings or in other words the information required for starting the fitting procedure. Having these data loaded into the hearing aid fitting software 105, the fitting connection software 106 establishes contact to the control server 103 and provides the current computer network address of the client 101 to the control server 103. The user of the client 101 then selects an unique external device identification, using said look-up database and the control server 103 is requested to establish a direct communication channel, between the client 101 and the selected external device 102 and hereby to the hearing aid system 110.
  • the hearing aid fitter logs on to the control server 103 using a log-on and a password.
  • the log on process needs not be carried out from within the hearing aid fitting system.
  • access to the control server 103 may not be restricted because access to use the external devices can be restricted instead.
  • unauthorized access to carry out a remote hearing aid fitting is avoided by further adapting the fitting connection software 106 to provide to the control server a hearing aid fitter identification, and by further adapting the control server 103 to evaluate whether the hearing aid fitter having said hearing aid fitter identification is allowed to access a given external device defined by its unique device identification, and wherein the external device is adapted to allow storage of specific hearing aid fitter identifications, and wherein the interface means of the control server is adapted such that the evaluation, in order to allow access to the external device, comprises a comparison of the identification of a hearing aid fitter requesting access and a hearing aid fitter identification stored in the external device.
  • the hearing aid fitter or hearing aid user retrieves the hearing aid fitter identification, when logging into the hearing aid fitting software 105 using a special account (i.e. a log-on). In this manner the selected account determines the range of external devices that can be accessed.
  • a special account i.e. a log-on
  • the information linking a hearing aid fitter identification with a specific device identification need not be stored in the external device, but may instead be stored elsewhere such as e.g. in the control server 103 or in a look-up database.
  • the look-up database is located at the control server 103 and accessed from within the hearing aid fitting system; however this needs not necessarily be the case.
  • the look-up database comprises a separate database or a multitude of databases where each database comprises only a specific type of search terms.
  • the fitting connection software 106 establishes contact to a look-up database, based on the selected search type, retrieves a unique device identification, which is later provided to the control server 103 together with the computer network address of the client, and requests the establishment of a direct communication between the client and the external device.
  • said look-up means is adapted such that some of the search terms allow a unique hearing aid system identification to be found while other of the search terms allow a unique external device identification to be found. In a further variation some of the search terms may even allow that either of the two identifications is searched for.
  • the hearing aid fitting system provides an advantageous combination of flexibility for the hearing aid fitter while also allowing access to the hearing aid system to be controlled in a simple and efficient manner.
  • One application of the hearing aid fitting system of the present invention comprises providing a hearing aid user with a personal external device.
  • the look-up database will link the hearing aid user name with the external device identification, and the access will typically be restricted to a single professional hearing aid fitter and the hearing aid user himself.
  • Another application of the hearing aid fitting system of the present invention comprises providing a hearing aid fitter with his own personal external device that he may carry with him if out travelling.
  • the look-up database will link the hearing aid fitter name with the external device identification, and the access will typically be restricted to the professional hearing aid fitter himself.
  • Yet another application of the hearing aid fitting system of the present invention comprises providing a public institution with an external device that may be accessed by a hearing aid user, by any one belonging to the society of professional hearing aid fitters or possibly only by hearing aid fitters with specialized competence in fitting a special brand of hearing aids.
  • the look-up database will link the type of hearing aid user and hearing aid fitter society with the external device identification and the access will be restricted to the hearing aid user and professional hearing aid fitters belonging to said society.
  • the fitting software driver 107 transforms the protocol of the hearing aid fitting software data output from Universal Serial Bus (USB) to a network protocol, such as the User Datagram Protocol (UDP) and the external device software driver 109 transforms the received data from the client 101 from the network protocol and into a protocol suitable for transmitting the data to the hearing aid system 110.
  • USB Universal Serial Bus
  • UDP User Datagram Protocol
  • This latter protocol is normally a proprietary protocol that varies among the individual hearing aid system manufacturers.
  • data from the external device 102 and to the hearing aid system 110 are transmitted using wireless link means.
  • the data may be transmitted without the use of wireless link means, i.e. over a wired connection.
  • the external device 102 is adapted to be inserted directly into an Ethernet connection of a standard internet modem.
  • a standard internet modem basically any computer network connection of the modem can be used.
  • the database server 104 is integrated as part of the client 101.
  • data from the external device 102 and to the hearing aid system 110 are transmitted at least partly using wired link means.
  • the software drivers 107 and 109 may be omitted in case the hearing aid fitting software 105 and the link means providing the data transmission between the client 101 and the external device 102 and between the external device 102 and to the hearing aid system 110 are set up to use the same protocol.
  • the software driver 107 may be omitted, in case the fitting software can provide output in a suitable network protocol or only the software driver 109 may be omitted in case the data transmission between the external device 102 and the hearing aid system 110 can use a suitable network protocol.
  • the hearing aid fitting system according to Fig. 1 is advantageous in that a remote fitting can be carried out in a simple manner even in the case where the hearing aid system 110 is protected behind a firewall since the direct communication channel is set up in response to a request from the external device 102 that is positioned behind said firewall together with the hearing aid system 110.
  • the hearing aid fitting system according to Fig. 1 is further advantageous in that a remote fitting can be carried out in a simple manner virtually independent of the selected fitting software platform through the use of the fitting connection software 106 and the fitting software driver 107.
  • the embodiment according to Fig. 1 is further advantageous in that it enables existing hearing aid fitting software to remotely fit existing hearing aid systems without having to modify the fitting software itself.
  • Fig. 1 is advantageous in that all that is required of the hearing aid user in order to enable the remote fitting according to the invention is to insert the external device 102 into a network connection and position the hearing aid system 110 within range of the wireless link means of the external device 102.
  • the external device 102 may be implemented as an embedded device.
  • FIG. 2 illustrates highly schematically a hearing aid fitting system according to a second embodiment of the invention.
  • the hearing aid fitting system 200 of Fig. 2 comprises basically the same elements as the hearing aid fitting system 100 of Fig. 1 , except that the client 101 is now split into a user client 202 and a hearing aid fitting server 201.
  • the user client 202 is a simple device having a web browser.
  • the hearing aid fitting server 201 comprises the fitting connection software 106 and driver 107 already described with reference to Fig. 1 and the hearing aid fitting software 205 implemented as a web service such that no hearing aid fitting software needs to be installed on the user client 202 - a web browser is all that is required in order to fit a hearing aid system using the user client 202.
  • the web service of the hearing aid fitting software 205 provides the graphical user interface to the user client 202.
  • the embodiment of Fig. 2 is especially advantageous in that the user client is a generic device that is platform independent and in that the communication between the user client 202 and the hearing aid fitting server 201 is independent of the selected platform for the hearing aid fitting server 201.
  • the user client 202 can therefore be any type of web enabled device, such as a smart phone or tablet PC, independent of the operating system.
  • FIG. 3 illustrates highly schematically a hearing aid fitting system 300 according to a third embodiment of the invention.
  • the hearing aid fitting system 300 of Fig. 3 comprises basically the same elements as the hearing aid fitting system 200 of Fig. 2 , except that the user client 301 in addition to the web browser 304 comprises a wireless access point 303 and that the external device 302 comprises wireless link means that enables the external device 302 to establish the initial contact to the control server 103 and the direct communication channel to the hearing aid fitting server 201 using the wireless access point 303 of the user client 301.
  • the embodiment of Fig. 3 is especially advantageous in that a hearing user only requires the user client 301, the external device 302 and internet access in order to fit a hearing aid system.
  • the hearing aid fitting system 300 according to the embodiment of Fig. 3 does not require a modem because the external device 302 connects to the internet through the access point 303 of the user client 301.
  • the user client 301 is a smart phone or a tablet PC.
  • the external device 302 seeks to establish contact to the control server 103 as soon as the external device is powered up.
  • the hearing aid fitting software 205 of the client 201 is distributed on a graphical user interface server and a hearing aid fitting server.
  • FIG. 4 illustrates in a more graphical manner the hearing aid fitting system 100 according to the first embodiment of the invention.
  • the hearing aid fitting system 100 comprises a client 101, an external device 102, a control server 103, a hearing aid user database server 104 and a hearing aid system 110.
  • a standard modem 401 is illustrated, whereto the external device 102 is connected using an Ethernet connection.
  • any computer network connection can be used.
  • the external device 102, 302 comprises a unique device identification that is provided to a basic communication establishing server that based on said unique device identification enables the external device 102, 302 to provide the unique hearing aid system identification to a specific one among several control servers, whereby an efficient arrangement of the control servers can be achieved.
  • the external device is not implemented as an embedded device.
  • an embedded device is defined by being designed only for carrying out specific functions within a larger system.
  • a general-purpose computer such as a personal computer (PC) is designed to be flexible and to meet a wide range of end-user needs.
  • Ethernet protocol and connections may be substituted with other suitable computer network protocols, such as e.g. the Transmission Control Protocol (TCP) or the User Datagram Protocol (UDP), and connections.
  • TCP Transmission Control Protocol
  • UDP User Datagram Protocol
  • the communication channel between the client 101 and the external device 102 is established using Transmission Control Protocol (TCP) or User Datagram Protocol (UDP) hole punching, mediated by the control server 103.
  • TCP Transmission Control Protocol
  • UDP User Datagram Protocol
  • additional functionality can be added, such that e.g. a hearing aid fitter can be available for hearing aid users visiting an internal device positioned at e.g. a public institution or a remote room in a hearing aid clinic and automatically will receive an alert when the external device has connected to a hearing aid system.
  • This can e.g. be done by: using the client to provide information to the control server that the client is available for assisting one specific or a multitude of external devices, by using the external device to provide information to the control server when a hearing aid system is detected by one of said external device, e.g. by positioning the hearing aid system within wireless range of the external device, and by using the control server to alert the client and thus the hearing aid fitter of this event.
  • a software application such as e.g. a smart phone application, can be adapted to provide the information to the control server that a hearing aid system has been connected to a specific external device, whereby this extra functionality need not be included in the external device.
  • another software application such as e.g. a smart phone application
  • This can be implemented in a simple manner by linking, in the control server, the hearing aid fitter identification, which is set to be responsible for said external devices, with a given smart phone identification.

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Neurosurgery (AREA)
  • Otolaryngology (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Telephonic Communication Services (AREA)
  • Computer Networks & Wireless Communication (AREA)

Claims (15)

  1. Système de pose de prothèse auditive (100),
    adapté pour la pose à distance d'une prothèse auditive, comprenant un client (101), un dispositif externe (102), un serveur de commande (103), un moyen de consultation et un moyen de liaison,
    dans lequel le client (101), le dispositif externe (102), le serveur de commande (103), le moyen de consultation et la prothèse auditive sont adaptés pour communiquer par les moyens de liaison ;
    - dans lequel ledit moyen de consultation est adapté pour permettre la recherche d'une identification de dispositif unique sur la base d'une multitude de types de termes de recherche ;
    - dans lequel ledit client (101) comprend un logiciel de pose (105) adapté pour la pose d'une prothèse auditive, un moyen de sélection adapté pour sélectionner une identification de dispositif unique en utilisant ledit moyen de consultation et un logiciel de connexion (106), un moyen adapté pour se connecter audit serveur de commande afin de fournir audit serveur de commande une adresse de réseau d'ordinateurs courante du client, l'identification de dispositif unique sélectionné et une identification de poseur de prothèse auditive et de demander audit serveur de commande d'établir un canal de communication directe entre ledit client et le dispositif externe ayant ladite identification de dispositif unique pour la personne ayant ladite identification de poseur ;
    - dans lequel le dispositif externe (102) comprend une identification de dispositif unique, un moyen d'application logicielle de dispositif externe adapté pour fournir ladite identification de dispositif unique et une adresse de réseau d'ordinateurs courante du dispositif externe (102) audit serveur de commande (103) et un moyen de redirection adapté pour diriger le contenu des données transmises via ledit canal de communication directe au système de prothèse auditive (110),
    - dans lequel ledit serveur de commande (103) comprend un moyen d'interface adapté pour fournir le canal de communication directe entre le client et le dispositif externe sur la base des adresses de réseau d'ordinateurs courantes et de l'identification de dispositif unique choisie et sur la base d'une évaluation du fait que le poseur de prothèse auditive ayant ladite identification de poseur de prothèse auditive est ou non en droit d'accéder au dispositif externe ayant ladite identification de dispositif unique.
  2. Système de pose de prothèse auditive selon la revendication 1, dans lequel ladite multitude de types de termes de recherche comprend au moins deux types dans le groupe comprenant le nom de l'utilisateur de la prothèse auditive, le nom de la clinique de pose de la prothèse auditive, le nom d'un emplacement spécifique dans une clinique de pose de la prothèse auditive, le nom du poseur de la prothèse auditive et le nom de l'institution publique.
  3. Système de pose de prothèse auditive selon la revendication 1 ou 2, dans lequel ledit dispositif externe est adapté pour permettre le stockage d'identifications de poseurs de prothèses auditives spécifiques et dans lequel ledit moyen d'interface du serveur de commande est adapté de sorte que l'évaluation pour permettre un accès au dispositif externe comprenne une comparaison de l'identification d'un poseur de prothèse auditive demandant un accès et d'une identification du poseur de prothèse auditive stockée dans le dispositif externe.
  4. Système de pose de prothèse auditive selon la revendication 1 ou 2, dans lequel ledit client est autorisé à accéder à ladite identification du poseur de prothèse auditive sur la base d'une connexion utilisateur.
  5. Système de pose de prothèse auditive selon l'une quelconque des revendications précédentes, dans lequel ledit moyen de consultation est aménagé sous la forme d'au moins un serveur indépendant.
  6. Système de pose de prothèse auditive selon l'une quelconque des revendications précédentes, dans lequel ledit dispositif externe est un dispositif intégré.
  7. Système de pose de prothèse auditive selon l'une quelconque des revendications précédentes, dans lequel ledit dispositif externe est configuré de sorte que la seule interaction éventuelle d'un utilisateur soit d'insérer le dispositif externe dans un connecteur de réseau d'ordinateurs.
  8. Système de pose de prothèse auditive selon l'une quelconque des revendications précédentes, dans lequel ladite identification de dispositif unique est une identification de système de prothèse auditive unique qui a été récupéré par le dispositif externe.
  9. Système de pose de prothèse auditive selon l'une quelconque des revendications 1 à 7, dans lequel ladite identification de dispositif unique est une identification de dispositif externe unique.
  10. Système de pose de prothèse auditive selon l'une quelconque des revendications 1 à 7, dans lequel ledit moyen de consultation est adapté de sorte que certains desdits termes de recherche permettent de trouver une identification de système de prothèse auditive unique et que d'autres desdits termes de recherche permettent de trouver une identification de dispositif externe unique.
  11. Système de pose de prothèse auditive selon l'une quelconque des revendications précédentes, dans lequel ledit client comprend deux sous-parties : un client léger comprenant des moyens de navigation web et une partie de serveur de pose comprenant le logiciel de pose, l'interface utilisateur graphique correspondant et le moyen logiciel de connexion de pose étant adaptés pour demander au serveur de commande d'établir le canal de communication directe entre la partie de serveur du client et le dispositif externe.
  12. Système de pose de prothèse auditive selon la revendication 11, dans lequel ledit client léger comprend un point d'accès Ethernet sans fil de sorte que ledit dispositif externe puisse se connecter à l'Internet via ledit client.
  13. Procédé de pose d'un système de prothèse auditive comprenant les étapes consistant à :
    - fournir un client, un moyen de consultation, un dispositif externe, un serveur de commande et un système de prothèse auditive ;
    - utiliser le client et le moyen de consultation pour choisir une identification de dispositif unique ;
    - utiliser le client pour fournir l'identification de dispositif choisie, une adresse de réseau d'ordinateurs courante du client et une identification du poseur de prothèse auditive au serveur de commande ;
    - utiliser le dispositif externe pour fournir l'identification de dispositif unique et une adresse de réseau d'ordinateurs courante du dispositif externe au serveur de commande ;
    - utiliser ledit client pour demander au serveur de commande d'établir un canal de communication directe entre le client et le dispositif externe ;
    - utiliser le serveur de commande pour évaluer si le poseur de prothèse auditive ayant ladite identification de poseur de prothèse auditive est autorisé ou non à accéder au dispositif externe ayant ladite identification de dispositif unique ;
    - utiliser le serveur de commande pour établir le canal de communication directe entre le client et le dispositif externe ; et
    - utiliser le client, le canal de communication directe et le dispositif externe pour poser à distance le système de prothèse auditive.
  14. Procédé selon la revendication 13, comprenant les étapes consistant à :
    - stocker l'identification du poseur de prothèse auditive dans le dispositif externe, et dans lequel ladite étape d'évaluation du fait que le poseur de prothèse auditive ayant ladite identification de poseur de prothèse auditive est autorisé ou non à accéder au dispositif externe ayant ladite identification de dispositif unique comprend l'autre étape visant à :
    - comparer l'identification d'un poseur de prothèse auditive demandant un accès et une identification de poseur de prothèse auditive stockée dans le dispositif externe.
  15. Procédé selon la revendication 13, dans lequel l'étape d'utilisation du client pour fournir l'identification du poseur de prothèse auditive au serveur de commande comprend une étape visant à :
    - obtenir ladite identification de poseur de prothèse auditive sur la base d'une connexion utilisateur.
EP12815693.2A 2012-12-21 2012-12-21 Système de pose de prothèse auditive, et procédé pour la pose d'un système de prothèse auditive Active EP2936836B1 (fr)

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Application Number Priority Date Filing Date Title
PCT/EP2012/076570 WO2014094866A1 (fr) 2012-12-21 2012-12-21 Système de pose de prothèse auditive, et procédé pour la pose d'un système de prothèse auditive

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EP2936836A1 EP2936836A1 (fr) 2015-10-28
EP2936836B1 true EP2936836B1 (fr) 2017-02-01

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US (1) US9516439B2 (fr)
EP (1) EP2936836B1 (fr)
JP (1) JP6101811B2 (fr)
KR (1) KR101725986B1 (fr)
CN (1) CN104798382B (fr)
AU (1) AU2012396967A1 (fr)
CA (1) CA2895819C (fr)
DK (1) DK2936836T3 (fr)
SG (1) SG11201503060SA (fr)
WO (1) WO2014094866A1 (fr)

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Publication number Publication date
KR20150082400A (ko) 2015-07-15
US9516439B2 (en) 2016-12-06
CA2895819C (fr) 2017-10-10
CA2895819A1 (fr) 2014-06-26
CN104798382B (zh) 2017-11-07
EP2936836A1 (fr) 2015-10-28
WO2014094866A1 (fr) 2014-06-26
SG11201503060SA (en) 2015-05-28
KR101725986B1 (ko) 2017-04-12
US20150281863A1 (en) 2015-10-01
CN104798382A (zh) 2015-07-22
JP6101811B2 (ja) 2017-03-22
DK2936836T3 (en) 2017-03-13
AU2012396967A1 (en) 2015-07-09
JP2015537457A (ja) 2015-12-24

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